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EP 1 144 086 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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07.01.2004 Bulletin 2004/02 |
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Date of filing: 01.07.1999 |
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International Patent Classification (IPC)7: B01D 53/00 |
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International application number: |
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PCT/GB1999/002094 |
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International publication number: |
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WO 2000/001466 (13.01.2000 Gazette 2000/02) |
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AIR DRYER FOR A VEHICLE
LUFTTROCKNER FÜR EIN FAHRZEUG
DESSICCATEUR D'AIR POUR VEHICULE
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Designated Contracting States: |
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DE FR GB IT SE |
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Priority: |
02.07.1998 GB 9814254
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Date of publication of application: |
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17.10.2001 Bulletin 2001/42 |
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Proprietor: WABCO AUTOMOTIVE U.K. LIMITED |
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Morley,
Leeds, LS27 0HQ (GB) |
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Inventor: |
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- TOWNSEND, David H.
Wakefield,
West Yorkshire WF3 1ET (GB)
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Representative: Gray, James |
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Withers & Rogers,
Goldings House,
2 Hays Lane London SE1 2HW London SE1 2HW (GB) |
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References cited: :
DE-A- 3 139 682
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FR-A- 2 082 546
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- PATENT ABSTRACTS OF JAPAN vol. 010, no. 120 (C-343), 6 May 1986 (1986-05-06) & JP
60 244323 A (NIPPON AIR BRAKE KK), 4 December 1985 (1985-12-04)
- DATABASE WPI Section Ch, Week 199111 Derwent Publications Ltd., London, GB; Class
J01, AN 1991-079979 XP002119010 & SU 1 579 542 A (BORSK STEKLOAVTOMAT), 23 July 1990
(1990-07-23)
- DATABASE WPI Section Ch, Week 198214, Derwent Publications Ltd., London, GB; Class
J01, AN 1982-28153E, XP002119011 & SU 837 383 A (VOROSH DIESEL PROD) 15 June 1981
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Remarks: |
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WIPO A3 publication data is not currently available. |
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The invention relates to an air dryer for a vehicle and is particularly, but not
exclusively, concerned with a dryer for extracting moisture from air used in a commercial
vehicle braking system.
[0002] A typical commercial vehicle air brake system comprises a compressor and a dryer
upstream of the brakes for extracting moisture from the compressed air by means of
a bed of desiccant. The dried air then normally passes to one or more air reservoirs
for use in operation of the service brake. Once there is sufficient compressed air
in the reservoir, the compressor will normally idle, for example by opening an exhaust
valve on the compressor, until there is demand for further air to be pumped to the
reservoir.
[0003] It is necessary from time to time to dry out the bed of desiccant and the drying
step is normally performed while the compressor is idling. To dry the desiccant at
least partially, a small volume of dry compressed air from the reservoir is fed back
through the dryer. In practice, only a relatively small volume of dry air from the
reservoir is required to reduce moisture in the desiccant bed to a reasonable level.
Obviously, if larger volumes of air were passed through the dryer a more significant
reduction in moisture could be achieved. However, there is a practical limit to the
amount of air that can be withdrawn from the reservoir without having to take the
compressor out of idle mode and, ideally it would be useful if the desiccant could
be dried to a greater extent using the quantities of air which are presently available.
As an added benefit, it would be possible to reduce the amount of desiccant used in
the dryer if the drying could be carried out more efficiently.
[0004] FR 2082546 discloses a drying arrangement wherein heating of the drying media is
made possible. The drying media is housed within a canister having a recess within
which a plurality of electric heater elements are received. The heater elements are
utilised to heat by radiation a plurality of fins extending through the drying media.
[0005] An object of the present invention is to provide an improved form of air dryer with
the above advantages in mind.
[0006] According to one aspect of the invention, there is provided an air dryer for a vehicle
air system, the air dryer having a cartridge containing said drying media and heating
means for heating said drying media, whereby said heating means are mounted on said
cartridge.
[0007] By providing a heating means, additional moisture is driven out of the drying media
into the air whereby the volume of air used for drying carries off a greater quantity
of moisture than from non-heated drying media.
[0008] According to a further aspect of the invention there is provided a method of drying
a drying media in an air dryer of a vehicle, the vehicle being provided with a reservoir
to receive air from a compressor, and an air dryer between the compressor and the
reservoir for drying the air received from the compressor, the method comprising the
steps of:
providing said drying media in a cartridge of said air dryer, said cartridge having
heating means mounted thereon;
periodically heating said cartridge containing the drying media; and
permitting at intervals reverse flow of dried air from the reservoir to the drying
media whilst the drying media is hot.
[0009] In the preferred embodiment, heat is applied by the heating means either for a predetermined
period of time or for a period of time dependent upon the level of moisture sensed
by sensor means arranged in the dryer.
[0010] An electronic control unit (ECU) may be provided on the vehicle for controlling the
compressor and the heating of the drying media. For example, when drying of the drying
media becomes necessary, the ECU detects that the compressor is in idle mode and then
signals the onset of heating of the drying media whilst also permitting a quantity
of dried air from the reservoir to pass back through the dryer. After a set period
of time or once a predetermined low level of moisture has been reached, the ECU switches
off the heater. If the compressor is brought back on load, the heating/drying cycle
is terminated.
[0011] Heating and regeneration flow may occur substantially simultaneously. Alternatively
heating occurs before regeneration flow. This latter arrangement permits the regeneration
flow to be over a relatively short period, thus reducing the risk that a compressor
demand signal will cause the heating/regeneration cycle to be terminated.
[0012] Direct heating of moist desiccant can be rapid because the heat transfer coefficient
is high. Such an arrangement has consequent advantages over regeneration systems which
rely on pre-heating of regeneration air, typically because the heat transfer coefficient
of dry air is relatively low.
[0013] In a preferred embodiment. the air dryer is arranged in a braking circuit of a vehicle.
In such a case, drying of the drying media preferably takes place during a period
that the brakes of the vehicle are not being applied. Where the ECU is provided, the
ECU is preferably intelligent, and senses when the brakes are being applied and does
not then allow air in the braking system being used to dry the drying media. A suitable
sensor may be the existing brake light circuit which is generally energised momentarily
before the vehicle brake demand compressed air.
[0014] An air dryer in accordance with the invention will now be described by way of example
with reference to the accompanying drawing which is a diagrammatic view of a vehicle
air braking system incorporating an air dryer in accordance with the invention.
[0015] The air braking system comprises a compressor 10 connected to an air dryer 12 which,
in turn. is connected to a reservoir 14 and distribution arrangement 16 for operation
of vehicle brakes indicated generally at 18. The compressor 10 is controlled by an
electronic control unit ( ECU) 19 in response to sensed signals.
[0016] The air dryer 12 contains a cartridge of drying media 20 such as desiccant of known
kind for drying air passing from the compressor to the reservoir 14. An electric heater
22 is provided for heating the drying media in the air dryer. The heater 22 is a heating
element mounted on the cartridge containing the drying media 20, for example a resistance
film wound around the drying media.
[0017] The heater 22 is powered by a suitable source such a a battery on the vehicle or
an electrical generator. Vehicles with air braking systems typically have a very large
battery for the purpose of starting the usual diesel engine. The full capacity of
such a battery is not usually required whilst the vehicle is running, and thus a substantial
source of energy is available for the heater 22. This source can provide rapid heating,
and thus regeneration time of the dryer is not substantially increased. The vehicle
battery can be recharged from the vehicle generator over a period of time and consequently
an additional source of energy for the heater is not required. There will be a small
increase in vehicle fuel consumption due to the replacement of stored energy in the
battery, but pre-heating of any kind has an inevitable energy cost.
[0018] From time to time it is necessary to purge the drying media 20 of moisture in order
to ensure continued adequate drying of the air In order to do that. the ECU 19 senses
when the compressor 10 is in an idle mode. The ECU may also sense when the vehicle
brake lights are off to indicate that the brakes are not in use. To idle the compressor
10, the ECU 19 may cause an exhaust valve on the compressor to be opened so that it
no longer delivers air to the reservoir 14. Previously dried air is then permitted
to flow back from the reservoir 14 towards the dryer 12 and passes through the drying
media 20, the air carrying moisture from the drying media finally escaping via a valve
(not shown) through an outlet 21 in air dryer 12 to atmosphere. The valve permits
air to flow from the reservoir 14 through the outlet when air is not being fed under
pressure form the compressor 10. At the same time the ECU 19 switches on the heater
22, to heat the drying media 20.
[0019] The ECU 19 can be set to permit drying to take place at given intervals and for a
set period of time. Alternatively, a moisture sensor (not shown) can be provided which
will indicate to the ECU 19 the level of moisture in the drying media 20. In the latter
case, the ECU 19 will switch the system into drying mode when required and switch
the system back to normal mode when the sensor indicates that moisture has been reduced
sufficiently.
[0020] Typically, the drying media will be heated to a predetermined temperature prior to
dry air being passed through the media for regeneration. The heating element may be
under thermostatic control.
[0021] The combined effect of heating the drying media 20 and passing dried air through
the drying media simultaneously has a markedly improved drying effect than when dried
air alone is used to purge the drying media 20 of moisture. In that way, more effective
use is made of a given volume of previously dried air than in known arrangements where
there is no heating of the drying media 20. Therefore it is envisaged that smaller
quantities of drying media can be used in the manufacture of drying media cartridges
as drying is more efficient. Clearly, that is advantageous from the point of view
of cost, especially where the drying media is contained in a replaceable cartridge.
[0022] Usually, the drying media 20 will not be completely purged of moisture during the
drying mode but the level of moisture will be sufficiently reduced to effect adequate
drying of the air subsequently fed from the compressor 10 to the reservoir 14.
[0023] Whilst specific reference has been made to the operation of brakes of the vehicle,
it will be understood that the reservoir may feed other air consumers on the vehicle
such as windscreen wipers.
[0024] A twin chamber air dryer may be provided in the alternative. In such a system, dry
air from a purge reservoir may be used to dry a heated desiccant bed whilst the compressor
remains on load. and supplying air to the system through a parallel desiccant bed.
Means, such as a timer, is used to switch the air between the desiccant beds to allow
periodic drying Such a system is useful for vehicles where the air demand is more
or less continual, e.g. on city buses.
1. An air dryer (12) for a vehicle air system, the air dryer (12) having a cartridge
containing a drying media (20) and heating means for heating said drying media (20),
whereby said heating means are mounted on said cartridge.
2. An air dryer (12) as claimed in claim 1 wherein the heating means comprises a resistance
film.
3. An air dryer (12) as claimed in any preceding claim wherein the heating means is powered
by a vehicle electrical system including a battery.
4. An air dryer (12) as claimed in any preceding claim and including sensor means to
sense the moisture level of the drying media.
5. An air dryer (12) as claimed in any preceding claim and including a timer to determine
the period of activation of said heating means.
6. A method of drying a drying media (20) in an air dryer (12) of a vehicle, the vehicle
being provided with a reservoir (14) to receive air from a compressor (10), and an
air dryer (12) between the compressor (10) and the reservoir (14) for drying the air
received from the compressor (10), the method comprising the steps of:
providing said drying media (20) in a cartridge of said air dryer (12), said cartridge
having heating means mounted thereon;
periodically heating said cartridge containing the drying media (20); and
permitting at intervals reverse flow of dried air from the reservoir (14) to the drying
media whilst the drying media is hot.
7. A method as claimed in claim 6 wherein the drying media (20) is heated for a predetermined
period of time.
8. A method as claimed in claim 7 wherein said period of time is dependent upon the moisture
level of the drying media (20).
9. A method as claimed in claim 8 and including the step of sensing the moisture level
of the drying media (20) prior to heating the drying media (20).
10. A method as claimed in any of claims 6 to 9 including the preparatory step of determining
that the compressor (10) is off load.
11. A method according to claim 10 and including the further step of suspending said reverse
flow if the compressor (10) is brought on-load.
1. Lufttrockner (12) für ein Luftsystem eines Fahrzeugs, wobei der Lufttrockner (12)
einen Einsatzbehälter, welcher ein Trocknungsmittel (20) enthält, und eine Erwärmungseinrichtung
zum Erwärmen des Trocknungsmittels (20) aufweist, wobei die Erwärmungseinrichtung
an dem Einsatzbehälter angebracht ist.
2. Lufttrockner (12) nach Anspruch 1, wobei die Erwärmungseinrichtung einen Widerstandsfilm
umfaßt.
3. Lufttrockner (12) nach einem vorangehenden Anspruch, wobei die Erwärmungseinrichtung
durch ein elektrisches System eines Fahrzeugs, welches eine Batterie umfaßt, mit Energie
versorgt wird.
4. Lufttrockner (12) nach einem beliebigen vorangehenden Anspruch, ferner umfassend eine
Sensoreinrichtung zum Erfassen des Feuchtigkeitsniveaus des Trocknungsmittels.
5. Lufttrockner (12) nach einem beliebigen vorangehenden Anspruch, ferner umfassend einen
Zeitgeber zum Bestimmen der Betätigungszeit der Erwärmungseinrichtung.
6. Verfahren zum Trocknen eines Trocknungsmittels (20) in einem Lufttrockner (12) eines
Fahrzeugs, wobei das Fahrzeug mit einem Speicher (14) zum Aufnehmen von Luft von einem
Kompressor (10) und einem Lufttrockner (12) zwischen dem Kompressor (10) und dem Speicher
(14) versehen ist, um die von dem Kompressor (10) aufgenommene Luft zu trocknen, wobei
das Verfahren die Schritte umfaßt:
Verwenden des Trocknungsmittels (20) in einem Einsatzbehälter des Lufttrockners (12),
wobei der Einsatzbehälter eine Erwärmungseinrichtung aufweist, welche daran angebracht
ist;
periodisches Erwärmen des Einsatzbehälters, welcher das Trocknungsmittel (20) enthält;
und
Ermöglichen eines Rückflusses getrockneter Luft aus dem Speicher (14) zu dem Trocknungsmittel
in Intervallen, während das Trocknungsmittel warm ist.
7. Verfahren nach Anspruch 6, wobei das Trocknungsmittel (20) in einer vorbestimmten
Zeitperiode erwärmt wird.
8. Verfahren nach Anspruch 7, wobei die Zeitperiode von dem Feuchtigkeitsniveau des Trocknungsmittels
(20) abhängig ist.
9. Verfahren nach Anspruch 8, ferner umfassend den Schritt des Erfassens des Feuchtigkeitsniveaus
des Trocknungsmittels (20) vor dem Erwärmen des Trocknungsmittels (20).
10. Verfahren nach einem der Ansprüche 6 bis 9, umfassend den Vorbereitungsschritt des
Entscheidens, daß der Kompressor (10) unbelastet ist.
11. Verfahren nach Anspruch 10, ferner umfassend den Schritt des Unterbrechens des Rückflusses,
wenn der Kompressor (10) belastet wird.
1. Un dessiccateur d'air (12) pour un système de ventilation de véhicule, le dessiccateur
(12) possédant une cartouche contenant un agent dessiccateur (20) et des moyens de
chauffage pour le chauffage de cet agent dessiccateur (20) caractérisé en ce que ces moyens de chauffage sont montés sur la cartouche.
2. Un dessiccateur d'air (12) selon la revendication 1 caractérisé en ce que les moyens de chauffage comprennent un film résistif.
3. Un dessiccateur d'air (12) selon l'une quelconque des revendications précédentes caractérisé en ce que les moyens de chauffage sont alimentés par un système électrique de véhicule comportant
une batterie.
4. Un dessiccateur d'air (12) selon l'une quelconque des revendications précédentes caractérisé en ce qu'il comprend un moyen de capteur pour détecter le degré d'humidité de l'agent dessiccateur.
5. Un dessiccateur d'air (12) selon l'une quelconque des revendications précédentes caractérisé en ce qu'il comprend un minuteur pour déterminer le temps de fonctionnement des moyens de chauffage.
6. Procédé de dessiccation par un agent dessiccateur (20) dans un dessiccateur d'air
(12) d'un véhicule, le véhicule étant équipé d'un réservoir (14) pour recevoir de
l'air d'un compresseur (10) et un dessiccateur d'air (12) entre le compresseur (10)
et le réservoir (14) pour assécher l'air reçu du compresseur, le procédé étant
caractérisé en ce qu'il se compose des étapes de :
. obtenir cet agent dessiccateur (20) dans une cartouche de ce dessiccateur d'air
(12), sur cette cartouche étant montés des moyens de chauffage,
. chauffer périodiquement cette cartouche contenant l'agent dessiccateur(20) et,
. permettre à intervalles, d'inverser du réservoir à l'agent dessiccateur, le flux
de l'air asséché pendant que l'agent dessiccateur est chaud.
7. Procédé selon la revendication 6 caractérisé en ce que l'agent dessiccateur (20) est chauffé pendant une durée prédéterminée.
8. Procédé selon la revendication 7 caractérisé en ce que cette durée dépend du degré d'humidité de l'agent dessiccateur.
9. Procédé selon la revendication 8 caractérisé en ce qu'il comprend l'étape de détection du degré d'humidité de l'agent dessiccateur (20)
avant le chauffage de l'agent dessiccateur.
10. Procédé selon l'une quelconque des revendications 6 à 9 caractérisé en ce qu'il comprend l'étape initiale de détermination de l'état hors charge du compresseur.
11. Procédé selon la revendication 10 caractérisé en ce qu'il comprend l'étape supplémentaire d'interrompre temporairement ce flux inversé dans
le cas où le compresseur est mis en charge.
